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Impacts of the settings in a design for additive manufacturing process based on topological optimization

机译:基于拓扑优化的拓扑制造过程设计中的环境的影响

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摘要

With the development of additive manufacturing technologies, designers are being offered new opportunities that are changing their usual design rules. The ability to create increasingly complex shapes constitutes the main opening. The complexity achieved makes it possible to obtain lightweight parts while maintaining high mechanical performance. As a result, design methods have to be adapted. Most of these methods include a design optimization phase to improve mechanical performance. Topological optimization tools are becoming essential to achieve this objective. They allow to achieve the best possible design as unnecessary material is stripped away leaving only that needed to meet the design requirements. Nevertheless, the designer continues to play a significant role in terms of the final design owing to the number of variables and settings involved in each stage of the design process. This paper uses a case study to assess the impacts on part geometry of the different design optimization settings used in the additive manufacturing process. It highlights how the settings adjustments made by the designer have a significant impact on the final design.
机译:随着添加剂制造技术的发展,设计人员正在提供正在改变他们通常的设计规则的新机会。创造越来越复杂的形状的能力构成了主开口。所实现的复杂性使得可以在保持高机械性能的同时获得轻质部件。结果,必须调整设计方法。这些方法中的大多数包括设计优化阶段,以提高机械性能。拓扑优化工具变得必不可少,无法实现这一目标。它们允许实现最好的设计,因为只有不必要的材料被剥夺,只需要满足设计要求。尽管如此,由于设计过程的每个阶段中涉及的变量和设置的数量,设计人员继续在最终设计方面发挥重要作用。本文采用案例研究来评估对添加剂制造过程中使用的不同设计优化设置的零件几何的影响。它突出了设计师所做的设置调整如何对最终设计产生重大影响。

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